Anti-Vibration Table (AVT)
For Analytical Balances & Precision Instruments
HSN Code: 940320
The Chromgate Anti-Vibration Table (AVT) is specially designed to provide a stable and vibration-controlled working platform for analytical balances, microbalances, precision weighing instruments, and other vibration-sensitive laboratory equipment.
The table incorporates a heavy-duty structural frame with a thick granite weighing platform supported on vibration-isolating pads. This arrangement helps minimize the transmission of floor-borne vibrations and environmental disturbances to the sensitive instrument, thereby supporting stable readings, improved repeatability, and reliable weighing performance.
The Anti-Vibration Table is suitable for pharmaceutical, chemical, analytical, research, quality-control, educational, and industrial laboratories where high-precision weighing and measurement are required.
Standard Technical Specifications:-
- Product Type: Ant-Vibration Table (AVT)
- Application: Analytical Balances / Microbalances / Precision Instruments
- Worktop / Weighing Platform: Heavy-duty Jet Black Granite
- Granite Finish: Smooth and polished surface
- Supporting Structure: Heavy-duty rigid fabricated frame
- Vibration Isolation: Suitable anti-vibration / vibration-isolating pads provided below the granite weighing platform
- Design: Stable construction designed to minimize transmission of floor and structural vibration to the weighing surface
- Working Height: Approx. 850 mm
- Installation: Floor-standing
- Levelling: Suitable levelling arrangement can be provided for stable installation, as applicable
- Construction: Designed for rigidity, stability, and long-term laboratory use
- Customization: Dimensions and construction can be customized to coordinate with adjacent laboratory furniture and instrument requirements
Working Principle
The heavy granite platform provides high mass and structural stability, while the vibration-isolating pads help reduce the transfer of external vibration from the floor and surrounding structure to the weighing surface.
This combination provides a stable platform for sensitive instruments and helps reduce fluctuations in readings caused by vibration during precision weighing and measurement.

